Claims
- 1. A process for hydrodenitrogenating and/or hydrodesulfurizing a hydrocarbon feedstock containing organonitrogen and/or organosulfur compounds comprising the steps:
- (a) contacting said feedstock with hydrogen in the presence of a catalyst composition at elevated temperatures and pressures such that some of said organonitrogen and/or organosulfur compounds are converted to ammonia and/or hydrogen sulfide, thereby yielding a denitrogenated and/or desulfurized hydrocarbon product phase and an ammonia and/or hydrogen sulfide phase, said catalyst composition being comprised of molybdenum, nickel and phosphorous active components on support particles comprising gamma alumina, and said catalyst having been prepared by a method comprising the steps of (1) contacting said gamma alumina support particles with an aqueous solution containing ammonium hydroxide, (2) subsequently impregnating the resultant support particles with molybdenum, nickel and phosphorous by contacting said support particles with an acidic impregnating solution so as to provide composites containing molybdenum, nickel and phosphorous components, (3) drying composites obtained from step (2) at temperatures less than about 150.degree. F., (4) calcining the impregnated particles at an elevated temperature in the presence of oxygen, and (5) sulfiding the calcined particles such that essentially all molybdenum and nickel components are converted to metal sulfides; and
- (b) separating said hydrocarbon product phase from said ammonia and/or hydrogen sulfide phase.
- 2. The process defined in claim 1 wherein support particles obtained from step (a) are impregnated with molybdenum, nickel and phosphorus by introducing an aqueous solution containing molybdenum, nickel and phosphorous components into the pores of said hydroxylated support particles so as to provide composites containing, when dry, between about 12 and about 30 weight percent molybdenum components, calculated as molybdenum trioxide, between about 2 and about 6 weight percent nickel components, components, calculated as nickel oxide, and between about 2 and about 6 weight percent phosphorus components, calculated as elemental phosphorus.
- 3. The process defined in claim 1 wherein said gamma alumina support particles are contacted with a volume of aqueous ammonia solution which is greater than 8 percent of the aggregate pore volume of said particles.
- 4. A process for denitrogenating and/or desulfurizing a hydrocarbon feedstock by contacting a catalyst with said hydrocarbon feedstock under conditions of elevated temperature and pressure and in the presence of hydrogen, said catalyst comprising molybdenum, nickel and phosphorus active components on support particles comprising gamma alumina, said catalyst having been prepared by a method comprising the steps of:
- (a) contacting said support particles with a volume of aqueous ammonia which is greater than 8 percent of the aggregate pore volume of said particles;
- (b) drying the resultant particles;
- (c) contacting dried particles obtained from step (b) with an aqueous solution containing an organic acid having a pK.sub.a less than 5;
- (d) introducing an acidic aqueous solution containing molybdenum, nickel and phosphorus components into the pores of particles obtained from step (c) so as to provide composites containing, when dry, between about 12 and about 30 weight percent molybdenum components, calculated as molybdenum trioxide, between about 2 and 6 weight percent nickel components, calculated as nickel oxide, and between about 2 and about 6 weight percent phosphorus components, calculated as elemental phosphorus;
- (e) drying composites obtained from step (d) at temperatures less than about 150.degree. F.;
- (f) calcining dried composites obtained from step (e) at temperatures between about 800.degree. F. and about 1,100.degree. F. in the presence of oxygen so as to essentially convert said molybdenum and nickel components to metal oxides; and
- (g) sulfiding composites obtained from step (f) to convert essentially all of said metal oxides to metal sulfides.
- 5. The process defined in claim 4 wherein said aqueous ammonia solution contains greater than about 0.1 weight percent ammonium hydroxide.
- 6. The process defined in claim 4 wherein said aqueous ammonia solution contains between about 20 and 30 weight percent ammonium hydroxide.
- 7. The process defined in claim 4 wherein dried particles obtained from step (b) are contacted with an aqueous solution containing an organic acid having a pK.sub.a less than 5 but greater than 3.
- 8. The process defined in claim 4 wherein dried particles obtained from step (b) are contacted with an aqueous solution containing citric acid.
- 9. The process defined in claim 4 wherein said aqueous solution containing molybdenum, nickel and phosphorus components is introduced into the pores of particles obtained from step (c) such that the ratio of said nickel components, calculated as nickel oxide, to said molybdenum components, calculated as molybdenum trioxide, is between about 0.15:1 and about 0.20:1, and such that the ratio of said phosphorus components, calculated as elemental phosphorus, to said nickel components, calculated at nickel oxide, is between about 0.5:1 and about 1:1.
- 10. The process defined in claim 4 wherein said dried composites obtained from step (e) are calcined at temperatures between about 975.degree. F. and about 1,025.degree. F.
- 11. The process defined in claim 4 wherein said conditions comprise a temperature from about 400.degree. F. to about 1000.degree. F., a pressure from about 100 p.s.i.g. to about 5,000 p.s.i.g. and a hydrogen recycle rate of about 400 to about 20,000 cf/bbll.
- 12. A process for hydrodenitrogenating and/or hydrodesulfurizing a hydrocarbon feedstock comprising a gas oil by contacting a catalyst with said hydrocarbon feedstock under conditions including a temperature from about 600.degree. F. to about 850.degree. F., a pressure from about 400 to about 3,000 p.s.i.g. and a hydrogen recycle rate of about 1,000 to about 15,000 cf/bbll, said catalyst consisting essentially of molybdenum, nickel and phosphorus active components on support particles consisting essentially of gamma alumina, said catalyst having been prepared by a method comprising the steps of:
- (a) contacting selected gamma alumina support particles with a volume of an aqueous ammonia solution containing between about 20 and about 30 weight percent ammonium hydroxide, said volume being sufficient to essentially fill the aggregate pore volume of said particles, and said support particles being selected such that more than 60 percent of the aggregate particle pore volume is in pores having diameters between about 60 and about 80 angstroms;
- (b) drying the resultant support particles;
- (c) contacting dried particles obtained from step (b) with an aqueous solution of citric acid;
- (d) introducing an acidic aqueous solution containing ammonium heptamolybdate, nickel nitrate, and phosphoric acid into the pores of particles obtained from step (c) so as to provide composites containing, when dry, between about 12 and about 30 weight percent molybdenum components, calculated as molybdenum trioxide, between about 2 and about 6 weight percent nickel components, calculated as nickel oxide, and between about 2 and about 6 weight percent phosphorus components, calculated as elemental phosphorus, such that the ratio of said nickel components, calculated as nickel oxide, to said molybdenum components, calculated as molybdenum trioxide, is between about 0.15:1 and about 0.20:1, and such that the ratio of said phosphorus components calculated as elemental phosphorus, to said nickel components, calculated as nickel oxide, is between about 0.5:1 and about 1:1;
- (e) drying composites obtained from step (d) at temperatures less than about 150.degree. F.;
- (f) calcining dried composites obtained from step (e) at temperatures between about 975.degree. F. and about 1025.degree. F. in the presence of oxygen such that said molybdenum and nickel components are essentially converted to metal oxides; and
- (g) sulfiding said dried composites obtained from step (f) by contacting said composites with hydrogen sulfide and/or organic sulfur compounds in a hydrogen atmosphere such that said metal oxides are essentially converted to metal sulfides.
- 13. The process defined in claim 12 wherein support particles obtained from step (a) are aged for more than 15 minutes before being dried in step (b).
- 14. The process defined in claim 12 wherein support particles obtained from step (a) are aged for a period of time sufficient to allow hydroxyl ions within said aqueous ammonia solution to substantially reach chemical equilibrium with the surface of said gamma alumina support particles before said support particles are dried in step (b).
- 15. The process defined in claim 12 wherein said gas oil contains at least 2 ppmw of nitrogen components, calculated as N, and at least 0.02 weight percent of sulfur components, calculated as S.
- 16. A process for for denitrogenating and/or desulfurizing a hydrocarbon feedstock by contacting a catalyst with said hydrocarbon feedstock under conditions of elevated temperature and pressure and in the presence of hydrogen, said catalyst consisting essentially of molybdenum, nickel and phosphorus active components on support particles consisting essentially of gamma alumina, said catalyst having been prepared by a method comprising the steps of:
- (a) contacting gamma alumina support particles with an aqueous ammonia solution, said support particles having more than 60 percent of their aggregate particle pore volume in pores having diameters between about 60 and about 80 angstroms;
- (b) subsequently impregnating the resultant support particles with molybdenum, nickel and phosphorus by contacting said support particles with an acidic impregnating solution so as to provide a composite containing molybdenum, nickel and phosphorus components;
- (c) drying composites obtained from step (b) at temperatures less than about 150.degree. F.; and
- (d) calcining impregnated particles from step (c) at an elevated temperature in the presence of oxygen.
- 17. The process defined in claim 16 comprising the additional step of sulfiding calcined particles obtained from step (d) such that essentially all molybdenum and nickel components are converted to metal sulfides.
- 18. The process defined in claim 16 wherein the aqueous ammonia contacted support particles from step (a) are dried before being impregnated in step (b).
- 19. The process defined in claim 16 wherein support particles obtained from the drying of aqueous ammonia contacted support particles from step (a) are contacted before being impregnated in step (b) with an aqueous solution containing an organic acid having a pK.sub.a less than 5 but greater than 3.
- 20. The process defined in claim 16 wherein said conditions include a temperature from about 400.degree. F. to about 1,000.degree. F., a pressure from about 100 p.s.i.g. to about 5,000 p.s.i.g., a space velocity from about 0.1 to about 15 LHSV and a hydrogen recycle rate of about 400 to about 20,000 cf/bbll.
Parent Case Info
This is a division of application Ser. No. 588,115, filed Mar. 9, 1984, U.S. Pat. No. 4,513,097 which is a continuation of application Ser. No. 408,264 filed in the U.S. Patent & Trademark Office on Aug. 16, 1982 and now U.S. Pat. No. 4,446,248.
US Referenced Citations (13)
Foreign Referenced Citations (1)
Number |
Date |
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1024317 |
Mar 1966 |
GBX |
Divisions (1)
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Number |
Date |
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Parent |
588115 |
Mar 1984 |
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Continuations (1)
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408264 |
Aug 1982 |
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